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Predicting long-term lumen maintenance life of LED light sources using a particle filter-based prognostic approach

机译:使用基于粒子过滤器的预测方法预测LED光源的长期流明维持寿命

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摘要

Lumen degradation is a common failure mode in LED light sources. Lumen maintenance life, defined as the time when the maintained percentages of the initial light output fall below a failure threshold, is a key characteristic for assessing the reliability of LED light sources. Owing to the long lifetime and high reliability of LED lights sources, it is challenging to estimate the lumen maintenance life for LED light sources using traditional life testing that records failure data. This paper describes a particle filter-based (PF-based) prognostic approach based on both Sequential Monte Carlo (SMC) and Bayesian techniques to predict the lumen maintenance life of LED light sources. The lumen maintenance degradation data collected from an accelerated degradation test was used to demonstrate the prediction algorithm and methodology of the proposed PF approach. Its feasibility and prediction accuracy were then validated and compared with the TM-21 standard method that was created by the Illuminating Engineering Society of North America (IESNA). Finally, a robustness study was also conducted to analyze the initialization of parameters impacting the prediction accuracy and the uncertainties of the proposed PF method. The results show that, compared to the TM-21 method, the PF approach achieves better prediction performance, with an error of less than 5% in predicting the long-term lumen maintenance life of LED light sources. (C) 2014 Elsevier Ltd. All rights reserved.
机译:流明衰减是LED光源中常见的故障模式。流明维持寿命(定义为初始光输出的维持百分比下降到故障阈值以下的时间)是评估LED光源可靠性的关键特性。由于LED光源的使用寿命长且可靠性高,因此使用记录故障数据的传统寿命测试来估算LED光源的流明维持寿命具有挑战性。本文介绍了一种基于顺序蒙特卡洛(SMC)和贝叶斯技术的基于粒子过滤器(基于PF)的预测方法,以预测LED光源的流明维持寿命。从加速降解测试中收集的流明维持率降解数据用于证明所提出的PF方法的预测算法和方法。然后验证了其可行性和预测准确性,并与北美照明工程学会(IESNA)创建的TM-21标准方法进行了比较。最后,还进行了鲁棒性研究,分析了影响预测精度和所提出的PF方法不确定性的参数初始化。结果表明,与TM-21方法相比,PF方法具有更好的预测性能,在预测LED光源的长期流明维持寿命时误差小于5%。 (C)2014 Elsevier Ltd.保留所有权利。

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